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GB/T 31095-2014 English PDF

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GB/T 31095-2014: Lifts subject to seismic conditions
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PDF similar to GB/T 31095-2014


Standard similar to GB/T 31095-2014

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Basic data

Standard ID GB/T 31095-2014 (GB/T31095-2014)
Description (Translated English) Lifts subject to seismic conditions
Sector / Industry National Standard (Recommended)
Classification of Chinese Standard Q78
Classification of International Standard 91.140.90
Word Count Estimation 30,335
Date of Issue 12/12/2014
Date of Implementation 6/1/2015
Quoted Standard GB 7588-2003; GB/T 15706-2012; GB 18306; GB 21240-2007; GB/T 22562-2008; GB 26465-2011; GB 50011-2010
Regulation (derived from) National Standards Bulletin 2014 No. 30
Issuing agency(ies) General Administration of Quality Supervision, Inspection and Quarantine of the People's Republic of China, Standardization Administration of the People's Republic of China
Summary This standard specifies the special requirements for permanent installation in conformity with GB 50011-2010 buildings passenger lifts and freight elevators earthquake. This standard specifies additional requirements GB 7588-2003 and GB 21240-2007's. This

GB/T 31095-2014: Lifts subject to seismic conditions

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Lifts subject to seismic conditions ICS 91.140.90 Q78 National Standards of People's Republic of China Elevator requirement in case of earthquake Issued on. 2014-12-22 2015-06-01 implementation Administration of Quality Supervision, Inspection and Quarantine of People's Republic of China Standardization Administration of China released

Table of Contents

Introduction Ⅲ Introduction Ⅳ 1 Scope 1 2 Normative references 1 3 Terms and definitions 1 4 major risk list 2 5 Safety requirements and/or protective measures 3 6 Safety requirements and/or protective measures of verification 14 7 information 15 Appendix A (normative) Seismic elevator Level 16 Annex B (informative) design acceleration calculation 17 Appendix C (Informative Appendix) P-wave detection system 19 Annex D (informative) Checking the guide rail 20 Appendix E (normative) Seismic elevator control process example 24

Foreword

This standard was drafted in accordance with GB/T 1.1-2009 given rules. This standard by the National Standardization Technical Committee elevator (SAC/TC196) and proposed centralized. This standard is drafted by. Hitachi Elevator (China) Limited. Participated in the drafting of this Standard. China Academy of Building Research Construction Mechanization Research Branch, Shanghai Mitsubishi Elevator Co., Ltd., Otis Elevator (China) Investment Co., Thyssen Elevator Co., Ltd., Huasheng Fujitec Elevator Co., Ltd. Yongda Elevator Equipment (China) Limited Division, KONE, southeast Elevator Co., Ltd., Shanghai Institute of Special Equipment Inspection, Schindler (China) Elevator Ltd., Toshiba Elevator (China) Limited, West Otis Elevator Co., Ltd., Jiangnan Jiajie Elevator Co., GiantKONE Elevator Co., Ltd., Guangzhou Elevator Industry Co., Ltd., Shanghai Hyundai Elevator Co., Ltd., Shanghai STEP Electric Company Limited Division Suzhou Torin drive equipment Co., Ltd., Qinhuangdao Development Zone prospects photoelectric Technology Co., Ltd. The main drafters of this standard. Luguo Xiong, Wangze Wei, Chen Fengwang, often up to summer heroic, Zheng Wu, Jin Chun, Yang Zonglin, Li Zhongming, Ma Yiping, Any Long Feng, Zhang Yuqi, Zhaowen Gang, Wen Aimin, Zhaobi Tao, Shen Hua Su Guoming, Li Haifeng, Wang Peng, FANG Wen Na, Hou Yongjie.

Introduction

This standard states the circumstances under seismic elevator involved in dangerous, hazardous situations and events range. This standard is to protect people and goods in case of earthquakes, and to prevent the use of elevators, maintenance, inspection and emergency operations related to crisis Insurance, development of additional safety codes and passenger lifts and freight elevators related. This standard aims to. --- Avoid lethal injuries and reduce the degree of injury; --- Avoid elevator entrapment; --- Avoid losses; --- Avoid environmental problems caused by oil spills; --- Reducing the number of services exit the elevator. Suppose contract customers and suppliers signed elevator has to be considered in the design acceleration (ad), S-wave seismic detection system (if There) and P-wave detection system (if you have the most effective location) provided consultations, designer or building owner must provide the lift design acceleration Degree (ad) and explicitly included in the manufacturer to the owner of the relevant information. This standard only consider the impact of the earthquake, the earthquake itself does not study characteristics. Elevator requirement in case of earthquake

1 Scope

This standard specifies the special permanent installation in conformity with GB 50011-2010 buildings passenger lifts and freight elevators earthquake Specific requirements. This standard specifies additional requirements GB 7588-2003 and GB 21240-2007's. This standard applies to passenger lifts and freight elevators newly installed, as well as with the increase in passenger elevators and freight elevator safety Basis. This standard does not apply, as defined in Table A.1 seismic rating of 0 elevator lift. This standard does not address other risks caused by the earthquake, such as fire, flood, or explosion.

2 Normative references

The following documents for the application of this document is essential. For dated references, only the dated version suitable for use herein Member. For undated references, the latest edition (including any amendments) applies to this document. GB 7588-2003 elevator manufacturing and installation of safety norms GB/T 15706-2012 Safety of machinery - General principles for design risk assessment and risk decreases (ISO 12100.2010, IDT) GB 18306 Chinese ground motion parameter zoning map GB 21240-2007 hydraulic elevator manufacturing and installation of safety norms GB/T 22562-2008 Elevator T-rail (ISO 7465.2007, IDT) GB 26465-2011 Fire elevator manufacturing and installation of safety norms GB 50011-2010 Seismic Design of Buildings

3 Terms and Definitions

GB 7588, GB 21240 and defined by the following terms and definitions apply to this document. 3.1 Hooked point snagpoint Rail bracket, guide plate bolts, rail connecting plate, tablet or similar device with a flexible element (such as a rope, chain or trailing cable, etc.) likely Hooked position occur. 3.2 Design acceleration designacceleration ad Horizontal acceleration used to calculate the forces acting on the earthquake (moment) on the elevator system, which is calculated see Appendix B. 3.3 Seismic elevator Level seismicliftcategories According to the design acceleration (ad), the seismic elevator into different grades. NOTE. Table A.1 shows the seismic elevator levels. 3.4 P wave primarywave A compression earthquake longitudinal wave, also called primary wave.

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